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1 294 jeremybenn
-- CC50A01.A
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--
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--                             Grant of Unlimited Rights
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--
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--     Under contracts F33600-87-D-0337, F33600-84-D-0280, MDA903-79-C-0687,
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--     F08630-91-C-0015, and DCA100-97-D-0025, the U.S. Government obtained
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--     unlimited rights in the software and documentation contained herein.
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--     Unlimited rights are defined in DFAR 252.227-7013(a)(19).  By making
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--     this public release, the Government intends to confer upon all
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--     recipients unlimited rights  equal to those held by the Government.
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--     These rights include rights to use, duplicate, release or disclose the
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--     released technical data and computer software in whole or in part, in
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--     any manner and for any purpose whatsoever, and to have or permit others
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--     to do so.
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--
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--                                    DISCLAIMER
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--
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--     ALL MATERIALS OR INFORMATION HEREIN RELEASED, MADE AVAILABLE OR
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--     DISCLOSED ARE AS IS.  THE GOVERNMENT MAKES NO EXPRESS OR IMPLIED
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--     WARRANTY AS TO ANY MATTER WHATSOEVER, INCLUDING THE CONDITIONS OF THE
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--     SOFTWARE, DOCUMENTATION OR OTHER INFORMATION RELEASED, MADE AVAILABLE
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--     OR DISCLOSED, OR THE OWNERSHIP, MERCHANTABILITY, OR FITNESS FOR A
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--     PARTICULAR PURPOSE OF SAID MATERIAL.
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--*
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--
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-- OBJECTIVE:
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--      Check that a formal parameter of a library-level generic unit may be
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--      a formal tagged private type. Check that a nonlimited tagged type may
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--      be passed as an actual. Check that if the formal type is indefinite,
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--      both indefinite and definite types may be passed as actuals.
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--
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-- TEST DESCRIPTION:
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--      The generic package declares a formal tagged private type (this can
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--      be considered the parent "mixin" class). This type is extended in
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--      the generic to provide support for stacks of items of any nonlimited
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--      tagged type. Stacks are modeled as singly linked lists, with the list
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--      nodes being objects of the extended type.
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--
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--      A generic testing procedure pushes items onto a stack, and pops them
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--      back off, verifying the state of the stack at various points along the
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--      way. The push and pop routines exercise functionality important to
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--      tagged types, such as type conversion toward the root of the derivation
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--      class and extension aggregates.
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--
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--      The formal tagged private type has an unknown discriminant part, and
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--      is thus indefinite. This allows both definite and indefinite types
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--      to be passed as actuals. For tagged types, definite implies
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--      nondiscriminated, and indefinite implies discriminated (with known
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--      or unknown discriminants).
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--
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-- TEST FILES:
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--      This test consists of the following files:
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--
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--         FC50A00.A
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--      -> CC50A01.A
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--
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--
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-- CHANGE HISTORY:
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--      06 Dec 94   SAIC    ACVC 2.0
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--      21 Nov 95   SAIC    ACVC 2.0.1 fixes: Moved instantiations of
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--                          BC50A01_0 to library level.
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--      11 Aug 96   SAIC    ACVC 2.1: Updated prologue. Added pragma
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--                          Elaborate to context clauses for CC50A01_2 & _3.
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--
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--!
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with FC50A00;  -- Tagged (actual) type declarations.
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generic        -- Generic stack abstraction.
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   type Item (<>) is tagged private;            -- Formal tagged private type.
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   TC_Default_Value : Item;                     -- Needed in View_Top (see
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                                                -- below).
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package CC50A01_0 is
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   type Stack is private;
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-- Note that because the actual type corresponding to Item may be
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-- unconstrained, the functions of removing the top item from the stack and
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-- returning the value of the top item of the stack have been separated into
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-- Pop and View_Top, respectively. This is necessary because otherwise the
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-- returned value would have to be an out parameter of Pop, which would
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-- require the user (in the unconstrained case) to create an uninitialized
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-- unconstrained object to serve as the actual, which is illegal.
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   procedure Push     (I : in Item; S : in out Stack);
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   procedure Pop      (S : in out Stack);
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   function  View_Top (S : Stack) return Item;
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   function Size_Of (S : Stack) return Natural;
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private
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   type Stack_Item;
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   type Stack_Ptr is access Stack_Item;
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   type Stack_Item is new Item with record      -- Extends formal type.
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      Next : Stack_Ptr := null;
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   end record;
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   type Stack is record
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      Top  : Stack_Ptr := null;
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      Size : Natural   := 0;
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   end record;
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end CC50A01_0;
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     --==================================================================--
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package body CC50A01_0 is
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   -- Link NewItem in at the top of the stack (the extension aggregate within
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   -- the allocator initializes the inherited portion of NewItem to equal I,
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   -- and NewItem.Next to point to what S.Top points to).
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   procedure Push (I : in Item; S : in out Stack) is
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      NewItem : Stack_Ptr;
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   begin
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      NewItem := new Stack_Item'(I with S.Top);     -- Extension aggregate.
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      S.Top   := NewItem;
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      S.Size  := S.Size + 1;
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   end Push;
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   -- Remove item from top of stack. This procedure only updates the state of
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   -- the stack; it does not return the value of the popped item. Hence, in
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   -- order to accomplish a "true" pop, both View_Top and Pop must be called
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   -- consecutively.
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   --
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   -- If the stack is empty, the Pop is ignored (for simplicity; in a true
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   -- application this might be treated as an error condition).
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   procedure Pop (S : in out Stack) is
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   begin
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      if S.Top = null then                          -- Stack is empty.
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         null;
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         -- Raise exception.
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      else
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         S.Top  := S.Top.Next;
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         S.Size := S.Size - 1;
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         -- Deallocate discarded node.
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      end if;
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   end Pop;
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   -- Return the value of the top item on the stack. This procedure only
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   -- returns the value; it does not remove the top item from the stack.
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   -- Hence, in order to accomplish a "true" pop, both View_Top and Pop must
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   -- be called consecutively.
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   --
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   -- Since items on the stack are of a type (Stack_Item) derived from Item,
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   -- which is a (tagged) private type, type conversion toward the root is the
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   -- only way to get a value of type Item for return to the caller.
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   --
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   -- If the stack is empty, View_Top returns a pre-specified default value.
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   -- (In a true application, an exception might be raised instead).
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   function View_Top (S : Stack) return Item is
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   begin
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      if S.Top = null then                          -- Stack is empty.
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         return TC_Default_Value;                   -- Testing artifice.
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         -- Raise exception.
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      else
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         return Item(S.Top.all);                    -- Type conversion.
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      end if;
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   end View_Top;
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   function Size_Of (S : Stack) return Natural is
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   begin
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      return (S.Size);
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   end Size_Of;
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end CC50A01_0;
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     --==================================================================--
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-- The formal package Stacker below is needed to gain access to the
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-- appropriate version of the "generic" type Stack. It is provided with an
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-- explicit actual part in order to restrict the packages that can be passed
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-- as actuals to those which have been instantiated with the same actuals
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-- which this generic procedure has been instantiated with.
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with CC50A01_0;  -- Generic stack abstraction.
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generic
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   type Item_Type (<>) is tagged private;       -- Formal tagged private type.
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   Default : Item_Type;
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   with package Stacker is new CC50A01_0 (Item_Type, Default);
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procedure CC50A01_1 (S : in out Stacker.Stack; I : in Item_Type);
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     --==================================================================--
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--
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-- This generic procedure performs all of the testing of the
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-- stack abstraction.
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--
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with Report;
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procedure CC50A01_1 (S : in out Stacker.Stack; I : in Item_Type) is
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begin
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   Stacker.Push (I, S);                    -- Push onto empty stack.
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   Stacker.Push (I, S);                    -- Push onto nonempty stack.
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   if Stacker.Size_Of (S) /= 2 then
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      Report.Failed ("   Wrong stack size after 2 Pushes");
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   end if;
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   -- Calls to View_Top must initialize a declared object of type Item_Type
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   -- because the type may be unconstrained.
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   declare
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      Buffer1 : Item_Type := Stacker.View_Top (S);
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   begin
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      Stacker.Pop (S);                     -- Pop item off nonempty stack.
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      if Buffer1 /= I then
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         Report.Failed ("   Wrong stack item value after 1st Pop");
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      end if;
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   end;
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   declare
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      Buffer2 : Item_Type := Stacker.View_Top (S);
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   begin
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      Stacker.Pop (S);                     -- Pop last item off stack.
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      if Buffer2 /= I then
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         Report.Failed ("   Wrong stack item value after 2nd Pop");
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      end if;
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   end;
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   if Stacker.Size_Of (S) /= 0 then
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      Report.Failed ("   Wrong stack size after 2 Pops");
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   end if;
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   declare
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      Buffer3 : Item_Type := Stacker.View_Top (S);
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   begin
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      if Buffer3 /= Default then
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         Report.Failed ("   Wrong result after Pop of empty stack");
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      end if;
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      Stacker.Pop (S);                     -- Pop off empty stack.
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   end;
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end CC50A01_1;
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     --==================================================================--
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with FC50A00;
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with CC50A01_0;
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pragma Elaborate (CC50A01_0);
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package CC50A01_2 is new CC50A01_0 (FC50A00.Count_Type,
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                                    FC50A00.TC_Default_Count);
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     --==================================================================--
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with FC50A00;
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with CC50A01_0;
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pragma Elaborate (CC50A01_0);
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package CC50A01_3 is new CC50A01_0 (FC50A00.Person_Type,
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                                    FC50A00.TC_Default_Person);
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     --==================================================================--
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with FC50A00;   -- Tagged (actual) type declarations.
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with CC50A01_0; -- Generic stack abstraction.
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with CC50A01_1; -- Generic stack testing procedure.
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with CC50A01_2;
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with CC50A01_3;
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with Report;
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procedure CC50A01 is
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   package Count_Stacks  renames CC50A01_2;
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   package Person_Stacks renames CC50A01_3;
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   procedure TC_Count_Test is new CC50A01_1 (FC50A00.Count_Type,
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                                             FC50A00.TC_Default_Count,
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                                             Count_Stacks);
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   Count_Stack : Count_Stacks.Stack;
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   procedure TC_Person_Test is new CC50A01_1 (FC50A00.Person_Type,
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                                              FC50A00.TC_Default_Person,
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                                              Person_Stacks);
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   Person_Stack : Person_Stacks.Stack;
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begin
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   Report.Test ("CC50A01", "Check that a formal parameter of a " &
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                "library-level generic unit may be a formal tagged " &
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                "private type");
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   Report.Comment ("Testing definite tagged type..");
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   TC_Count_Test  (Count_Stack,  FC50A00.TC_Count_Item);
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   Report.Comment ("Testing indefinite tagged type..");
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   TC_Person_Test (Person_Stack, FC50A00.TC_Person_Item);
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   Report.Result;
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end CC50A01;

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